Abstract:
Credit card fraud prevention techniques are disclosed in which the authorization of a payment card may be performed using information obtained from a mobile device (e.g., a smart phone) associated with a user who initiates a point-of-sale payment card transaction. In one implementation, a device may receive a request for authorization of a payment associated with a payment card; and obtain location information relating to a location of a mobile device associated with a user of the payment card. The device may determine, based at least on a location of the point-of-sale terminal and the location of the mobile device, whether to authorize the request for authorization of the payment.
Abstract:
A device is configured to store target location information indicating an acceptable signal strength at a target location. The device may receive a signal emitted from a base station. The signal may be received at the target location. The device may measure the signal strength of the signal at the target location. The device may transmit a signal strength message including information based on the signal strength. The signal strength message may cause the base station to adjust a power with which signals are emitted from the base station such that the signals satisfy the acceptable signal strength at the target location.
Abstract:
One or more devices may receive information that identifies a format of an identifier of a network device. The format of the identifier may indicate a portion of the identifier that identifies a type of the network device. The one or more devices may receive the identifier of the network device based on a user device connecting with the network device to communicate via the network device; determine the type of the network device connected to the user device based on the portion of the identifier and a format of the identifier that identifies the type of network device; and execute a processing instruction based on the type of network device connected to the user device.
Abstract:
A system may be configured to determine a floor of a building in which the user device is located at a time a call was placed. The information, indicating the determined floor, may be provided to a callee, such as a public safety answering point (“PSAP”). The floor may be determined based on, for example, comparing an altitude of the user device and/or a list of networks or devices that are visible to the user device, to a set of reference information.
Abstract:
A device receives an emergency call via a session initiation protocol (SIP) invite that includes a cell identification (ID) and a service or device type associated with a user equipment (UE). The device determines, based on the service or device type, whether the UE is a fixed device or a wireless device, and uses a static approach to route the emergency call to a public safety answering point (PSAP) when the UE is a fixed device. The device uses a cell database to route the emergency call to the PSAP, based on the cell ID, when the UE is a wireless device.
Abstract:
A device may receive first common public radio interface (CPRI) information associated with a first CPRI format. The device may determine a translation key associated with the first CPRI format. The translation key may include information associated with translating the first CPRI information to a second CPRI format. The second CPRI format may be different from the first CPRI format. The device may generate second CPRI information based on processing the first CPRI information with the translation key. The second CPRI information may be associated with the second CPRI format. The device may provide the second CPRI information associated with the second CPRI format.
Abstract:
A request to access a location-based service is received via a wireless access point (WAP). A WAP identifier associated with the WAP may be identified based on the request and a particular geographic location associated with the WAP may be determined based on the identifier. For example, a WAP information service (WIS) may store data associating geographic locations and WAP identifiers corresponding to a plurality of WAPs that include the WAP, and the particular geographic location may be determined by querying the WIS, based on the particular WAP identifier, to identify the particular geographic location. A communication may be established between the user device and location-based service based on the particular geographic location associated with the WAP.
Abstract:
A system includes a network device receives a request for media content from a plurality of user devices and transmits the media content in accordance with at least one of a unicast mode and a broadcast mode. A content monitoring device counts a number of requests for the media content received at the network device and selects the mode of the network device based on the number of requests received. A method includes receiving a request for media content from a plurality of user devices, counting a number of requests for media content received at the network device, selecting at least one of a unicast mode and a broadcast mode of the network device based on the number of requests received at the network device, and transmitting the media content in accordance with the selected mode.
Abstract:
A device is configured to obtain network information indicating an amount of client devices, of each device type, registered in an operator network. The device is configured to obtain client device information identifying a client device and determine a device type of the client device based on the client device information. The device is configured to determine a frequency for the client device to use to communicate with the operator network based on the device type of the client device and the amount of client devices of each of the device types registered in the operator network. The device is configured to provide an instruction to the client device to use the frequency to communicate with the operator network.
Abstract:
A device is configured to obtain base station information for base stations indicating whether data communicated via a respective base station should receive optimization processing. The device may obtain a base station identifier from a base station. The device may determine whether the data communicated via the base station should receive the optimization processing based on the base station information and the base station identifier. The device may receive non-optimized data to be sent to a client device via the base station. The device may selectively cause the optimization processing to be performed on the non-optimized data based on whether the data communicated via the base station should receive the optimization processing. The device may provide optimized data generated by the optimization processing or the non-optimized data to the client device via the base station based on selectively causing the optimization processing to be performed.